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首页> 外文期刊>Molecular and Cellular Biology >Protein synthesis in lysates of Aedes albopictus cells infected with vesicular stomatitis virus.
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Protein synthesis in lysates of Aedes albopictus cells infected with vesicular stomatitis virus.

机译:水泡性口炎病毒感染的白纹伊蚊细胞裂解物中的蛋白质合成。

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Aedes albopictus cells (clone LT-C7) showed a marked cytopathic effect and inhibition of protein synthesis (both host and viral) after infection with vesicular stomatitis virus (VSV), but only if (i) cultures were incubated at 34 degrees C rather than 28 degrees C and (ii) serum was present in the medium (S. Gillies and V. Stollar, Mol. Cell. Biol. 2:66-75, 1982). To learn more about how protein synthesis is shut off in VSV-infected A. albopictus cells, we have compared cell-free protein synthesis in extracts prepared from VSV-infected cells and control cells. Extracts prepared 6 h after infection from VSV-infected cells maintained at 34 degrees C in the presence of serum reflected what was observed with intact cells in at least two respects: (i) they showed a markedly diminished capacity to carry out protein synthesis (whether directed by endogenous or exogenously added mRNA), and (ii) there was decreased phosphorylation in vitro by [gamma-32P]ATP of a specific ribosomal protein (Gillies and Stollar, Mol. Cell. Biol. 2:66-75, 1982). In addition, and consistent with a block at the level of initiation, the formation of 80S initiation complexes, as measured by binding of VSV 12 to 18S mRNA, was reduced in the inactive extracts. Addition of an S-100 fraction from uninfected cells to the inactive extract reversed each of the aforementioned changes; i.e., it restored protein synthetic activity, it stimulated the formation of 80S initiation complexes, and it increased phosphorylation of the specific ribosomal protein referred to above. The active component in the S-100 fraction was heat labile and non-dialyzable and, upon ammonium sulfate fractionation of the S-100 fraction, was found in the 40 to 70% saturation fraction. Our findings suggest that VSV infection of A. albopictus cells inhibits protein synthesis by inactivating a macromolecular component, probably a protein, in the S-100 fraction which may be involved in the initiation of protein synthesis. More specifically, we suggest that this component is involved in the joining of the ribosomal subunits to form 80S initiation complexes.
机译:感染水泡性口腔炎病毒(VSV)后,白纹伊蚊细胞(LT-C7克隆)表现出显着的细胞病变作用并抑制蛋白质合成(宿主和病毒),但前提是(i)将培养物在34摄氏度而不是在34摄氏度下孵育在培养基中存在28℃和(ii)血清(S.Gillies和V.Stollar,Mol.Cell.Biol.2:66-75,1982)。为了了解更多有关在VSV感染的白带曲霉细胞中如何关闭蛋白质合成的信息,我们比较了从VSV感染的细胞和对照细胞制备的提取物中的无细胞蛋白质合成。感染后6小时从在血清存在下保持在34°C的VSV感染细胞中制备的提取物至少在两个方面反映了完整细胞所观察到的结果:(i)它们显示出明显的进行蛋白质合成的能力(无论是否(ii)通过[γ-32P] ATP体外特异性磷酸核糖体蛋白的磷酸化水平降低(Gillies and Stollar,Mol。Cell。Biol。2:66-75,1982)。 。另外,并且与起始水平上的阻断相一致,通过无活性提取物中通过VSV 12与18S mRNA的结合测量的80S起始复合物的形成减少了。将来自未感染细胞的S-100级分添加到无活性提取物中可以逆转上述每个变化;即,它恢复了蛋白质的合成活性,刺激了80S起始复合物的形成,并且增加了上述特定核糖体蛋白的磷酸化。 S-100馏分中的活性成分不耐热且不可透析,并且在硫酸铵分级分离S-100馏分时,发现其饱和分数为40%至70%。我们的发现表明,白纹曲霉细胞的VSV感染通过使可能参与蛋白质合成起始的S-100级分中的大分子成分(可能是蛋白质)失活而抑制蛋白质合成。更具体地说,我们建议该成分参与核糖体亚基的连接以形成80S起始复合物。

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